[{"citation":{"apa":"Meschut, G., Merklein, M., Brosius, A., Drummer, D., Fratini, L., Füssel, U., Gude, M., Homberg, W., Martins, P. A. F., Bobbert, M., Lechner, M., Kupfer, R., Gröger, B., Han, D., Kalich, J., Kappe, F., Kleffel, T., Köhler, D., Kuball, C.-M., … Wolf, M. (2022). Review on mechanical joining by plastic deformation. <i>Journal of Advanced Joining Processes</i>, <i>5</i>, Article 100113. <a href=\"https://doi.org/10.1016/j.jajp.2022.100113\">https://doi.org/10.1016/j.jajp.2022.100113</a>","ieee":"G. Meschut <i>et al.</i>, “Review on mechanical joining by plastic deformation,” <i>Journal of Advanced Joining Processes</i>, vol. 5, Art. no. 100113, 2022, doi: <a href=\"https://doi.org/10.1016/j.jajp.2022.100113\">10.1016/j.jajp.2022.100113</a>.","short":"G. Meschut, M. Merklein, A. Brosius, D. Drummer, L. Fratini, U. Füssel, M. Gude, W. Homberg, P.A.F. Martins, M. Bobbert, M. Lechner, R. Kupfer, B. Gröger, D. Han, J. Kalich, F. Kappe, T. Kleffel, D. Köhler, C.-M. Kuball, J. Popp, D. Römisch, J. Troschitz, C. Wischer, S. Wituschek, M. Wolf, Journal of Advanced Joining Processes 5 (2022).","chicago":"Meschut, G., M. Merklein, A. Brosius, D. Drummer, L. Fratini, U. Füssel, M. Gude, et al. “Review on Mechanical Joining by Plastic Deformation.” <i>Journal of Advanced Joining Processes</i> 5 (2022). <a href=\"https://doi.org/10.1016/j.jajp.2022.100113\">https://doi.org/10.1016/j.jajp.2022.100113</a>.","mla":"Meschut, G., et al. “Review on Mechanical Joining by Plastic Deformation.” <i>Journal of Advanced Joining Processes</i>, vol. 5, 100113, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.jajp.2022.100113\">10.1016/j.jajp.2022.100113</a>.","ama":"Meschut G, Merklein M, Brosius A, et al. Review on mechanical joining by plastic deformation. <i>Journal of Advanced Joining Processes</i>. 2022;5. doi:<a href=\"https://doi.org/10.1016/j.jajp.2022.100113\">10.1016/j.jajp.2022.100113</a>","bibtex":"@article{Meschut_Merklein_Brosius_Drummer_Fratini_Füssel_Gude_Homberg_Martins_Bobbert_et al._2022, title={Review on mechanical joining by plastic deformation}, volume={5}, DOI={<a href=\"https://doi.org/10.1016/j.jajp.2022.100113\">10.1016/j.jajp.2022.100113</a>}, number={100113}, journal={Journal of Advanced Joining Processes}, publisher={Elsevier BV}, author={Meschut, G. and Merklein, M. and Brosius, A. and Drummer, D. and Fratini, L. and Füssel, U. and Gude, M. and Homberg, W. and Martins, P.A.F. and Bobbert, M. and et al.}, year={2022} }"},"quality_controlled":"1","status":"public","_id":"32275","publisher":"Elsevier BV","user_id":"66459","volume":5,"publication":"Journal of Advanced Joining Processes","date_created":"2022-06-29T07:42:45Z","keyword":["Mechanical Engineering","Mechanics of Materials","Engineering (miscellaneous)","Chemical Engineering (miscellaneous)"],"type":"journal_article","title":"Review on mechanical joining by plastic deformation","year":"2022","publication_identifier":{"issn":["2666-3309"]},"author":[{"first_name":"G.","last_name":"Meschut","full_name":"Meschut, G."},{"last_name":"Merklein","first_name":"M.","full_name":"Merklein, M."},{"full_name":"Brosius, A.","last_name":"Brosius","first_name":"A."},{"full_name":"Drummer, D.","first_name":"D.","last_name":"Drummer"},{"full_name":"Fratini, L.","last_name":"Fratini","first_name":"L."},{"first_name":"U.","last_name":"Füssel","full_name":"Füssel, U."},{"full_name":"Gude, M.","last_name":"Gude","first_name":"M."},{"full_name":"Homberg, W.","first_name":"W.","last_name":"Homberg"},{"last_name":"Martins","first_name":"P.A.F.","full_name":"Martins, P.A.F."},{"full_name":"Bobbert, M.","last_name":"Bobbert","first_name":"M."},{"full_name":"Lechner, M.","first_name":"M.","last_name":"Lechner"},{"last_name":"Kupfer","first_name":"R.","full_name":"Kupfer, R."},{"full_name":"Gröger, B.","first_name":"B.","last_name":"Gröger"},{"full_name":"Han, D.","last_name":"Han","first_name":"D."},{"last_name":"Kalich","first_name":"J.","full_name":"Kalich, J."},{"full_name":"Kappe, F.","last_name":"Kappe","first_name":"F."},{"last_name":"Kleffel","first_name":"T.","full_name":"Kleffel, T."},{"first_name":"D.","last_name":"Köhler","full_name":"Köhler, D."},{"full_name":"Kuball, C.-M.","last_name":"Kuball","first_name":"C.-M."},{"last_name":"Popp","first_name":"J.","full_name":"Popp, J."},{"full_name":"Römisch, D.","first_name":"D.","last_name":"Römisch"},{"first_name":"J.","last_name":"Troschitz","full_name":"Troschitz, J."},{"full_name":"Wischer, C.","first_name":"C.","last_name":"Wischer"},{"full_name":"Wituschek, S.","last_name":"Wituschek","first_name":"S."},{"last_name":"Wolf","first_name":"M.","full_name":"Wolf, M."}],"date_updated":"2023-04-27T08:55:13Z","publication_status":"published","intvolume":"         5","article_number":"100113","language":[{"iso":"eng"}],"doi":"10.1016/j.jajp.2022.100113"},{"publication":"Advanced Engineering Materials","issue":"10","date_created":"2022-12-06T13:50:32Z","type":"journal_article","keyword":["Condensed Matter Physics","General Materials Science"],"year":"2022","title":"Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting","author":[{"full_name":"Neuser, Moritz","first_name":"Moritz","last_name":"Neuser"},{"full_name":"Kappe, Fabian","last_name":"Kappe","first_name":"Fabian"},{"full_name":"Ostermeier, Jakob","first_name":"Jakob","last_name":"Ostermeier"},{"full_name":"Krüger, Jan Tobias","first_name":"Jan Tobias","last_name":"Krüger"},{"full_name":"Bobbert, Mathias","last_name":"Bobbert","first_name":"Mathias"},{"full_name":"Meschut, Gerson","last_name":"Meschut","first_name":"Gerson"},{"full_name":"Schaper, Mirko","first_name":"Mirko","last_name":"Schaper"},{"full_name":"Grydin, Olexandr","first_name":"Olexandr","last_name":"Grydin"}],"publication_identifier":{"issn":["1438-1656","1527-2648"]},"date_updated":"2023-04-27T08:54:57Z","publication_status":"published","intvolume":"        24","article_number":"2200874","language":[{"iso":"eng"}],"doi":"10.1002/adem.202200874","citation":{"bibtex":"@article{Neuser_Kappe_Ostermeier_Krüger_Bobbert_Meschut_Schaper_Grydin_2022, title={Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting}, volume={24}, DOI={<a href=\"https://doi.org/10.1002/adem.202200874\">10.1002/adem.202200874</a>}, number={102200874}, journal={Advanced Engineering Materials}, publisher={Wiley}, author={Neuser, Moritz and Kappe, Fabian and Ostermeier, Jakob and Krüger, Jan Tobias and Bobbert, Mathias and Meschut, Gerson and Schaper, Mirko and Grydin, Olexandr}, year={2022} }","ama":"Neuser M, Kappe F, Ostermeier J, et al. Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting. <i>Advanced Engineering Materials</i>. 2022;24(10). doi:<a href=\"https://doi.org/10.1002/adem.202200874\">10.1002/adem.202200874</a>","mla":"Neuser, Moritz, et al. “Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting.” <i>Advanced Engineering Materials</i>, vol. 24, no. 10, 2200874, Wiley, 2022, doi:<a href=\"https://doi.org/10.1002/adem.202200874\">10.1002/adem.202200874</a>.","chicago":"Neuser, Moritz, Fabian Kappe, Jakob Ostermeier, Jan Tobias Krüger, Mathias Bobbert, Gerson Meschut, Mirko Schaper, and Olexandr Grydin. “Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting.” <i>Advanced Engineering Materials</i> 24, no. 10 (2022). <a href=\"https://doi.org/10.1002/adem.202200874\">https://doi.org/10.1002/adem.202200874</a>.","short":"M. Neuser, F. Kappe, J. Ostermeier, J.T. Krüger, M. Bobbert, G. Meschut, M. Schaper, O. Grydin, Advanced Engineering Materials 24 (2022).","ieee":"M. Neuser <i>et al.</i>, “Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting,” <i>Advanced Engineering Materials</i>, vol. 24, no. 10, Art. no. 2200874, 2022, doi: <a href=\"https://doi.org/10.1002/adem.202200874\">10.1002/adem.202200874</a>.","apa":"Neuser, M., Kappe, F., Ostermeier, J., Krüger, J. T., Bobbert, M., Meschut, G., Schaper, M., &#38; Grydin, O. (2022). Mechanical Properties and Joinability of AlSi9 Alloy Manufactured by Twin‐Roll Casting. <i>Advanced Engineering Materials</i>, <i>24</i>(10), Article 2200874. <a href=\"https://doi.org/10.1002/adem.202200874\">https://doi.org/10.1002/adem.202200874</a>"},"quality_controlled":"1","project":[{"name":"TRR 285: TRR 285","_id":"130","grant_number":"418701707"},{"_id":"133","name":"TRR 285 - C: TRR 285 - Project Area C"},{"_id":"146","name":"TRR 285 – C02: TRR 285 - Subproject C02"}],"status":"public","publisher":"Wiley","_id":"34242","user_id":"66459","volume":24},{"has_accepted_license":"1","conference":{"end_date":"29.04.2022","name":"Esaform 2022","start_date":"26.04.2022","location":"Braga - Portugal"},"status":"public","user_id":"83141","ddc":["680"],"_id":"30292","quality_controlled":"1","citation":{"ieee":"D. Engemann and W. Homberg, “Hot Spinning of Cutting Blades for Food Industry,” presented at the Esaform 2022, Braga - Portugal.","apa":"Engemann, D., &#38; Homberg, W. (n.d.). <i>Hot Spinning of Cutting Blades for Food Industry</i>. Esaform 2022, Braga - Portugal.","chicago":"Engemann, David, and Werner Homberg. “Hot Spinning of Cutting Blades for Food Industry.” Braga - Portugal, n.d.","short":"D. Engemann, W. Homberg, in: Braga - Portugal, n.d.","mla":"Engemann, David, and Werner Homberg. <i>Hot Spinning of Cutting Blades for Food Industry</i>.","bibtex":"@inproceedings{Engemann_Homberg, place={Braga - Portugal}, title={Hot Spinning of Cutting Blades for Food Industry}, author={Engemann, David and Homberg, Werner} }","ama":"Engemann D, Homberg W. Hot Spinning of Cutting Blades for Food Industry."},"file_date_updated":"2022-03-14T07:19:21Z","place":"Braga - Portugal","publication_status":"accepted","date_updated":"2023-04-27T09:39:21Z","author":[{"id":"51720","last_name":"Engemann","first_name":"David","full_name":"Engemann, David"},{"full_name":"Homberg, Werner","last_name":"Homberg","first_name":"Werner"}],"title":"Hot Spinning of Cutting Blades for Food Industry","year":"2022","language":[{"iso":"eng"}],"abstract":[{"text":"The spinning process is a flexible incremental forming process for the manufacturing of axially-symmetric sheet metal or tubular components with functionally graded properties. It is characterized by the utilization of universal tooling geometries and quite low forming forces. The process has a high potential to reduce material waste, to extend the forming limits and to achieve more complex geometries as well as favorable part properties [1]. Current research work at the Chair of Forming Technology (LUF) is focused on innovative flow-turning processes that have a high potential for producing flat components with excellent geometrical and mechanical properties while keeping process times short [2]. In combination with process-integrated local heat treatment, the new spinning process is predestined for the efficient forming of ultra-high-strength steel or tailored materials. Due to the desired field of food industry only food-safe materials such as special stainless steels are being investigated. This paper presents an innovative machine layout as well as an adequate process design for the production of high-performance circular knives with optimized mechanical hardness. In this context, particular attention is paid to various areas of temperature control as well as process-related challenges during the process.","lang":"eng"}],"department":[{"_id":"156"}],"keyword":["Cutting blades","Flow-forming","Incremental forming","Hot Forming","High strength steels"],"type":"conference","date_created":"2022-03-14T07:22:43Z","file":[{"creator":"davideng","date_created":"2022-03-14T07:19:21Z","date_updated":"2022-03-14T07:19:21Z","relation":"main_file","access_level":"closed","file_size":785105,"file_name":"PaperSuperSharp_Revision.pdf","success":1,"content_type":"application/pdf","file_id":"30293"}]},{"project":[{"name":"TRR 285 - C: TRR 285 - Project Area C","_id":"133"},{"name":"TRR 285 – C03: TRR 285 - Subproject C03","_id":"147"},{"name":"TRR 285: TRR 285","grant_number":"418701707","_id":"130"}],"quality_controlled":"1","citation":{"bibtex":"@article{Oesterwinter_Wischer_Homberg_2022, title={Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC)}, volume={12}, DOI={<a href=\"https://doi.org/10.3390/met12050869\">10.3390/met12050869</a>}, number={5869}, journal={Metals}, publisher={MDPI AG}, author={Oesterwinter, Annika and Wischer, Christian and Homberg, Werner}, year={2022} }","ama":"Oesterwinter A, Wischer C, Homberg W. Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC). <i>Metals</i>. 2022;12(5). doi:<a href=\"https://doi.org/10.3390/met12050869\">10.3390/met12050869</a>","mla":"Oesterwinter, Annika, et al. “Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC).” <i>Metals</i>, vol. 12, no. 5, 869, MDPI AG, 2022, doi:<a href=\"https://doi.org/10.3390/met12050869\">10.3390/met12050869</a>.","chicago":"Oesterwinter, Annika, Christian Wischer, and Werner Homberg. “Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC).” <i>Metals</i> 12, no. 5 (2022). <a href=\"https://doi.org/10.3390/met12050869\">https://doi.org/10.3390/met12050869</a>.","short":"A. Oesterwinter, C. Wischer, W. Homberg, Metals 12 (2022).","ieee":"A. Oesterwinter, C. Wischer, and W. Homberg, “Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC),” <i>Metals</i>, vol. 12, no. 5, Art. no. 869, 2022, doi: <a href=\"https://doi.org/10.3390/met12050869\">10.3390/met12050869</a>.","apa":"Oesterwinter, A., Wischer, C., &#38; Homberg, W. (2022). Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC). <i>Metals</i>, <i>12</i>(5), Article 869. <a href=\"https://doi.org/10.3390/met12050869\">https://doi.org/10.3390/met12050869</a>"},"volume":12,"user_id":"83141","publisher":"MDPI AG","_id":"31360","status":"public","department":[{"_id":"9"},{"_id":"156"},{"_id":"630"}],"keyword":["General Materials Science","Metals and Alloys"],"type":"journal_article","date_created":"2022-05-21T17:27:16Z","abstract":[{"lang":"eng","text":"<jats:p>The adaptive joining process employing friction-spun joint connectors (FSJC) is a promising method for the realization of adaptable joints and thus for lightweight construction. In addition to experimental investigations, numerical studies are indispensable tools for its development. Therefore, this paper includes an analysis of boundary conditions for the spatial discretization and mesh modeling techniques, the material modeling, the contact and friction modeling, and the thermal boundary conditions for the finite element (FE) modeling of this joining process. For these investigations, two FE models corresponding to the two process steps were set up and compared with the two related processes of friction stir welding and friction drilling. Regarding the spatial discretization, the Lagrangian approach is not sufficient to represent the deformation that occurs. The Johnson-Cook model is well suited as a material model. The modeling of the contact detection and friction are important research subjects. Coulomb’s law of friction is not adequate to account for the complex friction phenomena of the adaptive joining process. The thermal boundary conditions play a decisive role in heat generation and thus in the material flow of the process. It is advisable to use temperature-dependent parameters and to investigate in detail the influence of radiation in the entire process.</jats:p>"}],"issue":"5","publication":"Metals","doi":"10.3390/met12050869","language":[{"iso":"eng"}],"article_number":"869","intvolume":"        12","publication_status":"published","date_updated":"2023-04-27T09:39:39Z","publication_identifier":{"issn":["2075-4701"]},"author":[{"full_name":"Oesterwinter, Annika","last_name":"Oesterwinter","first_name":"Annika","id":"44917"},{"first_name":"Christian","last_name":"Wischer","full_name":"Wischer, Christian","id":"72219"},{"full_name":"Homberg, Werner","first_name":"Werner","last_name":"Homberg"}],"year":"2022","title":"Identification of Requirements for FE Modeling of an Adaptive Joining Technology Employing Friction-Spun Joint Connectors (FSJC)"},{"author":[{"id":"9360","full_name":"Heggemann, Thomas","last_name":"Heggemann","first_name":"Thomas"},{"full_name":"Psyk, Verena","last_name":"Psyk","first_name":"Verena"},{"id":"44917","last_name":"Oesterwinter","first_name":"Annika","full_name":"Oesterwinter, Annika"},{"last_name":"Linnemann","first_name":"Maik","full_name":"Linnemann, Maik"},{"last_name":"Kräusel","first_name":"Verena","full_name":"Kräusel, Verena"},{"first_name":"Werner","last_name":"Homberg","full_name":"Homberg, Werner"}],"publication_identifier":{"issn":["2075-4701"]},"title":"Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology","status":"public","year":"2022","intvolume":"        12","date_updated":"2023-04-27T09:39:58Z","_id":"30885","language":[{"iso":"eng"}],"volume":12,"doi":"10.3390/met12040660","user_id":"83141","citation":{"chicago":"Heggemann, Thomas, Verena Psyk, Annika Oesterwinter, Maik Linnemann, Verena Kräusel, and Werner Homberg. “Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology.” <i>Metals</i> 12, no. 4 (2022). <a href=\"https://doi.org/10.3390/met12040660\">https://doi.org/10.3390/met12040660</a>.","short":"T. Heggemann, V. Psyk, A. Oesterwinter, M. Linnemann, V. Kräusel, W. Homberg, Metals 12 (2022).","apa":"Heggemann, T., Psyk, V., Oesterwinter, A., Linnemann, M., Kräusel, V., &#38; Homberg, W. (2022). Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology. <i>Metals</i>, <i>12</i>(4). <a href=\"https://doi.org/10.3390/met12040660\">https://doi.org/10.3390/met12040660</a>","ieee":"T. Heggemann, V. Psyk, A. Oesterwinter, M. Linnemann, V. Kräusel, and W. Homberg, “Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology,” <i>Metals</i>, vol. 12, no. 4, 2022, doi: <a href=\"https://doi.org/10.3390/met12040660\">10.3390/met12040660</a>.","ama":"Heggemann T, Psyk V, Oesterwinter A, Linnemann M, Kräusel V, Homberg W. Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology. <i>Metals</i>. 2022;12(4). doi:<a href=\"https://doi.org/10.3390/met12040660\">10.3390/met12040660</a>","bibtex":"@article{Heggemann_Psyk_Oesterwinter_Linnemann_Kräusel_Homberg_2022, title={Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology}, volume={12}, DOI={<a href=\"https://doi.org/10.3390/met12040660\">10.3390/met12040660</a>}, number={4}, journal={Metals}, author={Heggemann, Thomas and Psyk, Verena and Oesterwinter, Annika and Linnemann, Maik and Kräusel, Verena and Homberg, Werner}, year={2022} }","mla":"Heggemann, Thomas, et al. “Comparative Analysis of Electrohydraulic and Electromagnetic Sheet Metal Forming against the Background of the Application as an Incremental Processing Technology.” <i>Metals</i>, vol. 12, no. 4, 2022, doi:<a href=\"https://doi.org/10.3390/met12040660\">10.3390/met12040660</a>."},"publication":"Metals","issue":"4","quality_controlled":"1","abstract":[{"lang":"eng","text":"High-speed forming processes such as electromagnetic forming (EMF) and electrohydraulic forming (EHF) have a high potential for producing lightweight components with complex geometries, but the forming zone is usually limited to a small size for equipment-related reasons. Incremental strategies overcome this limit by using a sequence of local deformations to form larger component areas gradually. Hence, the technological potential of high-speed forming can be exploited for large-area components too. The target-oriented process design of such incremental forming operations requires a deep understanding of the underlying electromagnetic and electrohydraulic forming processes. This article therefore analyzes and compares the influence of fundamental process parameters on the acting loads, the resulting course of deformation, and the forming result for both technologies via experimental and numerical investigations. Specifically, it is shown that for the EHF process considered, the electrode distance and the discharge energy have a significant influence on the resulting forming depth. In the EHF process, the largest forming depth is achieved directly below the electrodes, while the pressure distribution in the EMF depends on the fieldshaper used. The energy requirement for the EHF process is comparatively low, while significantly higher forming speeds are achieved with the EMF process."}],"date_created":"2022-04-13T09:06:11Z","department":[{"_id":"9"},{"_id":"156"}],"type":"journal_article"},{"citation":{"mla":"Gräßler, Iris, et al. “Automated Requirement Dependency Analysis for Complex Technical Systems.” <i>Proceedings of the Design Society</i>, vol. 2, Cambridge University Press (CUP), 2022, pp. 1865–74, doi:<a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>.","bibtex":"@article{Gräßler_Oleff_Hieb_Preuß_2022, title={Automated Requirement Dependency Analysis for Complex Technical Systems}, volume={2}, DOI={<a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>}, journal={Proceedings of the Design Society}, publisher={Cambridge University Press (CUP)}, author={Gräßler, Iris and Oleff, Christian and Hieb, Michael and Preuß, Daniel}, year={2022}, pages={1865–1874} }","ama":"Gräßler I, Oleff C, Hieb M, Preuß D. Automated Requirement Dependency Analysis for Complex Technical Systems. <i>Proceedings of the Design Society</i>. 2022;2:1865-1874. doi:<a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>","ieee":"I. Gräßler, C. Oleff, M. Hieb, and D. Preuß, “Automated Requirement Dependency Analysis for Complex Technical Systems,” <i>Proceedings of the Design Society</i>, vol. 2, pp. 1865–1874, 2022, doi: <a href=\"https://doi.org/10.1017/pds.2022.189\">10.1017/pds.2022.189</a>.","apa":"Gräßler, I., Oleff, C., Hieb, M., &#38; Preuß, D. (2022). Automated Requirement Dependency Analysis for Complex Technical Systems. <i>Proceedings of the Design Society</i>, <i>2</i>, 1865–1874. <a href=\"https://doi.org/10.1017/pds.2022.189\">https://doi.org/10.1017/pds.2022.189</a>","chicago":"Gräßler, Iris, Christian Oleff, Michael Hieb, and Daniel Preuß. “Automated Requirement Dependency Analysis for Complex Technical Systems.” <i>Proceedings of the Design Society</i> 2 (2022): 1865–74. <a href=\"https://doi.org/10.1017/pds.2022.189\">https://doi.org/10.1017/pds.2022.189</a>.","short":"I. Gräßler, C. Oleff, M. Hieb, D. Preuß, Proceedings of the Design Society 2 (2022) 1865–1874."},"quality_controlled":"1","page":"1865-1874","_id":"31791","publisher":"Cambridge University Press (CUP)","user_id":"5905","volume":2,"status":"public","date_created":"2022-06-07T10:48:12Z","type":"journal_article","department":[{"_id":"152"}],"publication":"Proceedings of the Design Society","abstract":[{"text":"<jats:title>Abstract</jats:title><jats:p>Requirements changes are a leading cause for project failures. Due to propagation effects, change management requires dependency analysis. Existing approaches have shortcomings regarding ability to process large requirement sets, availability of required data, differentiation of propagation behavior and consideration of higher order dependencies. This paper introduces a new method for advanced requirement dependency analysis based on machine learning. Evaluation proves applicability and high performance by means of a case example, 4 development projects and 3 workshops with industry experts.</jats:p>","lang":"eng"}],"language":[{"iso":"eng"}],"doi":"10.1017/pds.2022.189","year":"2022","title":"Automated Requirement Dependency Analysis for Complex Technical Systems","publication_identifier":{"issn":["2732-527X"]},"author":[{"full_name":"Gräßler, Iris","orcid":"0000-0001-5765-971X","last_name":"Gräßler","first_name":"Iris","id":"47565"},{"full_name":"Oleff, Christian","last_name":"Oleff","first_name":"Christian","orcid":"0000-0002-0983-1850","id":"41188"},{"id":"72252","full_name":"Hieb, Michael","first_name":"Michael","last_name":"Hieb"},{"id":"40253","first_name":"Daniel","last_name":"Preuß","full_name":"Preuß, Daniel"}],"publication_status":"published","date_updated":"2023-04-27T09:43:18Z","article_type":"original","intvolume":"         2"},{"conference":{"name":"Fachtagung VDI MECHATRONIK 2022","start_date":"20220323","location":"Darmstadt","end_date":"20220324"},"author":[{"full_name":"Gräßler, I.","first_name":"I.","orcid":"0000-0001-5765-971X","last_name":"Gräßler","id":"47565"},{"id":"54680","full_name":"Roesmann, Daniel","last_name":"Roesmann","first_name":"Daniel"},{"orcid":"http://orcid.org/0000-0001-8778-2989","first_name":"Jens","last_name":"Pottebaum","full_name":"Pottebaum, Jens","id":"405"},{"full_name":"Corves, Burkhard","first_name":"Burkhard","last_name":"Corves"},{"last_name":"Mandischer","first_name":"Nils","full_name":"Mandischer, Nils"},{"first_name":"Marius","last_name":"Gürtler","full_name":"Gürtler, Marius"}],"status":"public","title":"Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr","year":"2022","date_updated":"2023-04-27T09:42:09Z","publication_status":"published","language":[{"iso":"ger"}],"_id":"32147","page":"151-156","doi":"10.26083/tuprints-00020963","user_id":"5905","citation":{"mla":"Gräßler, I., et al. “Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr.” <i>Tagungsband der VDI Mechatronik 2022</i>, 2022, pp. 151–56, doi:<a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>.","ama":"Gräßler I, Roesmann D, Pottebaum J, Corves B, Mandischer N, Gürtler M. Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr. In: <i>Tagungsband der VDI Mechatronik 2022</i>. ; 2022:151-156. doi:<a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>","bibtex":"@inproceedings{Gräßler_Roesmann_Pottebaum_Corves_Mandischer_Gürtler_2022, title={Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr}, DOI={<a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>}, booktitle={Tagungsband der VDI Mechatronik 2022}, author={Gräßler, I. and Roesmann, Daniel and Pottebaum, Jens and Corves, Burkhard and Mandischer, Nils and Gürtler, Marius}, year={2022}, pages={151–156} }","apa":"Gräßler, I., Roesmann, D., Pottebaum, J., Corves, B., Mandischer, N., &#38; Gürtler, M. (2022). Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr. <i>Tagungsband der VDI Mechatronik 2022</i>, 151–156. <a href=\"https://doi.org/10.26083/tuprints-00020963\">https://doi.org/10.26083/tuprints-00020963</a>","ieee":"I. Gräßler, D. Roesmann, J. Pottebaum, B. Corves, N. Mandischer, and M. Gürtler, “Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr,” in <i>Tagungsband der VDI Mechatronik 2022</i>, Darmstadt, 2022, pp. 151–156, doi: <a href=\"https://doi.org/10.26083/tuprints-00020963\">10.26083/tuprints-00020963</a>.","chicago":"Gräßler, I., Daniel Roesmann, Jens Pottebaum, Burkhard Corves, Nils Mandischer, and Marius Gürtler. “Mensch-Tracking zur Identifizierung des Voranschreitens von Roboterunterstützten Rettungseinsätzen der Feuerwehr.” In <i>Tagungsband der VDI Mechatronik 2022</i>, 151–56, 2022. <a href=\"https://doi.org/10.26083/tuprints-00020963\">https://doi.org/10.26083/tuprints-00020963</a>.","short":"I. Gräßler, D. Roesmann, J. Pottebaum, B. Corves, N. Mandischer, M. Gürtler, in: Tagungsband der VDI Mechatronik 2022, 2022, pp. 151–156."},"publication":"Tagungsband der VDI Mechatronik 2022","quality_controlled":"1","related_material":{"link":[{"url":"https://tuprints.ulb.tu-darmstadt.de/20963/","relation":"confirmation"}]},"date_created":"2022-06-24T07:43:50Z","department":[{"_id":"152"}],"type":"conference"},{"user_id":"5905","language":[{"iso":"eng"}],"_id":"33889","date_updated":"2023-04-27T09:40:34Z","year":"2022","status":"public","title":"Extended RFLP for complex technical systems","conference":{"start_date":"20221024","name":"8th IEEE International Symposium on Systems Engineering","location":"Wien","end_date":"20221026"},"author":[{"id":"47565","last_name":"Gräßler","first_name":"Iris","orcid":"0000-0001-5765-971X","full_name":"Gräßler, Iris"},{"last_name":"Wiechel","first_name":"Dominik","full_name":"Wiechel, Dominik","id":"67161"},{"id":"41188","last_name":"Oleff","first_name":"Christian","orcid":"0000-0002-0983-1850","full_name":"Oleff, Christian"}],"type":"conference","department":[{"_id":"152"}],"place":"Wien","date_created":"2022-10-26T13:25:17Z","quality_controlled":"1","citation":{"short":"I. Gräßler, D. Wiechel, C. Oleff, in: Wien, 2022.","chicago":"Gräßler, Iris, Dominik Wiechel, and Christian Oleff. “Extended RFLP for Complex Technical Systems.” Wien, 2022.","apa":"Gräßler, I., Wiechel, D., &#38; Oleff, C. (2022). <i>Extended RFLP for complex technical systems</i>. 8th IEEE International Symposium on Systems Engineering, Wien.","ieee":"I. Gräßler, D. Wiechel, and C. Oleff, “Extended RFLP for complex technical systems,” presented at the 8th IEEE International Symposium on Systems Engineering, Wien, 2022.","ama":"Gräßler I, Wiechel D, Oleff C. Extended RFLP for complex technical systems. In: ; 2022.","bibtex":"@inproceedings{Gräßler_Wiechel_Oleff_2022, place={Wien}, title={Extended RFLP for complex technical systems}, author={Gräßler, Iris and Wiechel, Dominik and Oleff, Christian}, year={2022} }","mla":"Gräßler, Iris, et al. <i>Extended RFLP for Complex Technical Systems</i>. 2022."}},{"department":[{"_id":"143"}],"type":"journal_article","keyword":["Fluid Flow and Transfer Processes","Computer Science Applications","Process Chemistry and Technology","General Engineering","Instrumentation","General Materials Science"],"date_created":"2022-12-05T21:49:48Z","abstract":[{"lang":"eng","text":"Crack growth in structures depends on the cyclic loads applied on it, such as mechanical, thermal and contact, as well as residual stresses, etc. To provide an accurate simulation of crack growth in structures, it is of high importance to integrate all kinds of loading situations in the simulations. Adapcrack3D is a simulation program that can accurately predict the propagation of cracks in real structures. However, until now, this three-dimensional program has only considered mechanical loads and static thermal loads. Therefore, the features of Adapcrack3D have been extended by including contact loading in crack growth simulations. The numerical simulation of crack propagation with Adapcrack3D is generally carried out using FE models of structures provided by the user. For simulating models with contact loading situations, Adapcrack3D has been updated to work with FE models containing multiple parts and necessary features such as coupling and surface interactions. Because Adapcrack3D uses the submodel technique for fracture mechanical evaluations, the architecture of the submodel is also modified to simulate models with contact definitions between the crack surfaces. This paper discusses the newly implemented attribute of the program with the help of illustrative examples. The results confirm that the contact simulation in Adapcrack3D is a major step in improving the functionality of the program."}],"issue":"15","publication":"Applied Sciences","doi":"10.3390/app12157557","language":[{"iso":"eng"}],"article_number":"7557","intvolume":"        12","publication_status":"published","date_updated":"2023-04-27T10:13:44Z","author":[{"last_name":"Joy","first_name":"Tintu David","full_name":"Joy, Tintu David","id":"30821"},{"id":"45673","first_name":"Deborah","last_name":"Weiß","full_name":"Weiß, Deborah"},{"full_name":"Schramm, Britta","last_name":"Schramm","first_name":"Britta","id":"4668"},{"id":"291","last_name":"Kullmer","first_name":"Gunter","full_name":"Kullmer, Gunter"}],"publication_identifier":{"issn":["2076-3417"]},"year":"2022","title":"Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations","project":[{"name":"TRR 285: TRR 285","grant_number":"418701707","_id":"130"},{"_id":"132","name":"TRR 285 - B: TRR 285 - Project Area B"},{"name":"TRR 285 – B04: TRR 285 - Subproject B04","_id":"143"}],"quality_controlled":"1","citation":{"short":"T.D. Joy, D. Weiß, B. Schramm, G. Kullmer, Applied Sciences 12 (2022).","chicago":"Joy, Tintu David, Deborah Weiß, Britta Schramm, and Gunter Kullmer. “Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations.” <i>Applied Sciences</i> 12, no. 15 (2022). <a href=\"https://doi.org/10.3390/app12157557\">https://doi.org/10.3390/app12157557</a>.","apa":"Joy, T. D., Weiß, D., Schramm, B., &#38; Kullmer, G. (2022). Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations. <i>Applied Sciences</i>, <i>12</i>(15), Article 7557. <a href=\"https://doi.org/10.3390/app12157557\">https://doi.org/10.3390/app12157557</a>","ieee":"T. D. Joy, D. Weiß, B. Schramm, and G. Kullmer, “Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations,” <i>Applied Sciences</i>, vol. 12, no. 15, Art. no. 7557, 2022, doi: <a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>.","ama":"Joy TD, Weiß D, Schramm B, Kullmer G. Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations. <i>Applied Sciences</i>. 2022;12(15). doi:<a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>","bibtex":"@article{Joy_Weiß_Schramm_Kullmer_2022, title={Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations}, volume={12}, DOI={<a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>}, number={157557}, journal={Applied Sciences}, publisher={MDPI AG}, author={Joy, Tintu David and Weiß, Deborah and Schramm, Britta and Kullmer, Gunter}, year={2022} }","mla":"Joy, Tintu David, et al. “Further Development of 3D Crack Growth Simulation Program to Include Contact Loading Situations.” <i>Applied Sciences</i>, vol. 12, no. 15, 7557, MDPI AG, 2022, doi:<a href=\"https://doi.org/10.3390/app12157557\">10.3390/app12157557</a>."},"volume":12,"user_id":"45673","_id":"34224","publisher":"MDPI AG","status":"public"},{"publication":"Engineering Fracture Mechanics","date_created":"2022-12-06T14:59:46Z","department":[{"_id":"143"},{"_id":"630"}],"keyword":["Mechanical Engineering","Mechanics of Materials","General Materials Science"],"type":"journal_article","author":[{"first_name":"Gunter","last_name":"Kullmer","full_name":"Kullmer, Gunter","id":"291"},{"id":"45673","last_name":"Weiß","first_name":"Deborah","full_name":"Weiß, Deborah"},{"id":"4668","first_name":"Britta","last_name":"Schramm","full_name":"Schramm, Britta"}],"publication_identifier":{"issn":["0013-7944"]},"title":"Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method","year":"2022","date_updated":"2023-04-27T10:15:11Z","publication_status":"published","language":[{"iso":"eng"}],"article_number":"108899","doi":"10.1016/j.engfracmech.2022.108899","citation":{"mla":"Kullmer, Gunter, et al. “Development of a Method for the Separate Measurement of the Growth of Internal Crack Tips by Means of the Potential Drop Method.” <i>Engineering Fracture Mechanics</i>, 108899, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>.","bibtex":"@article{Kullmer_Weiß_Schramm_2022, title={Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method}, DOI={<a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>}, number={108899}, journal={Engineering Fracture Mechanics}, publisher={Elsevier BV}, author={Kullmer, Gunter and Weiß, Deborah and Schramm, Britta}, year={2022} }","ama":"Kullmer G, Weiß D, Schramm B. Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method. <i>Engineering Fracture Mechanics</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>","ieee":"G. Kullmer, D. Weiß, and B. Schramm, “Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method,” <i>Engineering Fracture Mechanics</i>, Art. no. 108899, 2022, doi: <a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">10.1016/j.engfracmech.2022.108899</a>.","apa":"Kullmer, G., Weiß, D., &#38; Schramm, B. (2022). Development of a method for the separate measurement of the growth of internal crack tips by means of the potential drop method. <i>Engineering Fracture Mechanics</i>, Article 108899. <a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">https://doi.org/10.1016/j.engfracmech.2022.108899</a>","chicago":"Kullmer, Gunter, Deborah Weiß, and Britta Schramm. “Development of a Method for the Separate Measurement of the Growth of Internal Crack Tips by Means of the Potential Drop Method.” <i>Engineering Fracture Mechanics</i>, 2022. <a href=\"https://doi.org/10.1016/j.engfracmech.2022.108899\">https://doi.org/10.1016/j.engfracmech.2022.108899</a>.","short":"G. Kullmer, D. Weiß, B. Schramm, Engineering Fracture Mechanics (2022)."},"project":[{"name":"TRR 285: TRR 285","grant_number":"418701707","_id":"130"},{"_id":"132","name":"TRR 285 - B: TRR 285 - Project Area B"},{"name":"TRR 285 – B04: TRR 285 - Subproject B04","_id":"143"}],"quality_controlled":"1","status":"public","_id":"34246","publisher":"Elsevier BV","user_id":"45673"},{"quality_controlled":"1","citation":{"ama":"Mahnken R, Mirzapour J. A statistically based strain energy function for polymer chains in rubber elasticity. <i>Archive of Applied Mechanics</i>. 2022;92(11):3295-3323. doi:<a href=\"https://doi.org/10.1007/s00419-022-02237-8\">10.1007/s00419-022-02237-8</a>","bibtex":"@article{Mahnken_Mirzapour_2022, title={A statistically based strain energy function for polymer chains in rubber elasticity}, volume={92}, DOI={<a href=\"https://doi.org/10.1007/s00419-022-02237-8\">10.1007/s00419-022-02237-8</a>}, number={11}, journal={Archive of Applied Mechanics}, publisher={Springer Science and Business Media LLC}, author={Mahnken, Rolf and Mirzapour, Jamil}, year={2022}, pages={3295–3323} }","mla":"Mahnken, Rolf, and Jamil Mirzapour. “A Statistically Based Strain Energy Function for Polymer Chains in Rubber Elasticity.” <i>Archive of Applied Mechanics</i>, vol. 92, no. 11, Springer Science and Business Media LLC, 2022, pp. 3295–323, doi:<a href=\"https://doi.org/10.1007/s00419-022-02237-8\">10.1007/s00419-022-02237-8</a>.","short":"R. Mahnken, J. Mirzapour, Archive of Applied Mechanics 92 (2022) 3295–3323.","chicago":"Mahnken, Rolf, and Jamil Mirzapour. “A Statistically Based Strain Energy Function for Polymer Chains in Rubber Elasticity.” <i>Archive of Applied Mechanics</i> 92, no. 11 (2022): 3295–3323. <a href=\"https://doi.org/10.1007/s00419-022-02237-8\">https://doi.org/10.1007/s00419-022-02237-8</a>.","apa":"Mahnken, R., &#38; Mirzapour, J. (2022). A statistically based strain energy function for polymer chains in rubber elasticity. <i>Archive of Applied Mechanics</i>, <i>92</i>(11), 3295–3323. <a href=\"https://doi.org/10.1007/s00419-022-02237-8\">https://doi.org/10.1007/s00419-022-02237-8</a>","ieee":"R. Mahnken and J. Mirzapour, “A statistically based strain energy function for polymer chains in rubber elasticity,” <i>Archive of Applied Mechanics</i>, vol. 92, no. 11, pp. 3295–3323, 2022, doi: <a href=\"https://doi.org/10.1007/s00419-022-02237-8\">10.1007/s00419-022-02237-8</a>."},"status":"public","volume":92,"user_id":"335","_id":"34074","publisher":"Springer Science and Business Media LLC","page":"3295-3323","issue":"11","publication":"Archive of Applied Mechanics","department":[{"_id":"9"},{"_id":"154"},{"_id":"321"}],"type":"journal_article","keyword":["Mechanical Engineering"],"date_created":"2022-11-14T12:51:05Z","intvolume":"        92","date_updated":"2023-04-27T10:07:20Z","publication_status":"published","author":[{"full_name":"Mahnken, Rolf","first_name":"Rolf","last_name":"Mahnken","id":"335"},{"first_name":"Jamil","last_name":"Mirzapour","full_name":"Mirzapour, Jamil"}],"publication_identifier":{"issn":["0939-1533","1432-0681"]},"year":"2022","title":"A statistically based strain energy function for polymer chains in rubber elasticity","doi":"10.1007/s00419-022-02237-8","language":[{"iso":"eng"}]},{"publication":"SSRN Electronic Journal","citation":{"ama":"Clemens R, Barth E, Uhlmann E, Zhan Y, Caylak I, Mahnken R. Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp. <i>SSRN Electronic Journal</i>. Published online 2022. doi:<a href=\"https://doi.org/10.2139/ssrn.4259246\">10.2139/ssrn.4259246</a>","bibtex":"@article{Clemens_Barth_Uhlmann_Zhan_Caylak_Mahnken_2022, title={Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp}, DOI={<a href=\"https://doi.org/10.2139/ssrn.4259246\">10.2139/ssrn.4259246</a>}, journal={SSRN Electronic Journal}, publisher={Elsevier BV}, author={Clemens, Robin and Barth, Enrico and Uhlmann, Eckart and Zhan, Yingjie and Caylak, Ismail and Mahnken, Rolf}, year={2022} }","mla":"Clemens, Robin, et al. “Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp.” <i>SSRN Electronic Journal</i>, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.2139/ssrn.4259246\">10.2139/ssrn.4259246</a>.","short":"R. Clemens, E. Barth, E. Uhlmann, Y. Zhan, I. Caylak, R. Mahnken, SSRN Electronic Journal (2022).","chicago":"Clemens, Robin, Enrico Barth, Eckart Uhlmann, Yingjie Zhan, Ismail Caylak, and Rolf Mahnken. “Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp.” <i>SSRN Electronic Journal</i>, 2022. <a href=\"https://doi.org/10.2139/ssrn.4259246\">https://doi.org/10.2139/ssrn.4259246</a>.","apa":"Clemens, R., Barth, E., Uhlmann, E., Zhan, Y., Caylak, I., &#38; Mahnken, R. (2022). Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp. <i>SSRN Electronic Journal</i>. <a href=\"https://doi.org/10.2139/ssrn.4259246\">https://doi.org/10.2139/ssrn.4259246</a>","ieee":"R. Clemens, E. Barth, E. Uhlmann, Y. Zhan, I. Caylak, and R. Mahnken, “Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp,” <i>SSRN Electronic Journal</i>, 2022, doi: <a href=\"https://doi.org/10.2139/ssrn.4259246\">10.2139/ssrn.4259246</a>."},"quality_controlled":"1","date_created":"2023-02-02T12:49:43Z","keyword":["General Earth and Planetary Sciences","General Environmental Science"],"type":"journal_article","department":[{"_id":"9"},{"_id":"154"}],"year":"2022","title":"Effects on Process Forces of Individual Milling Tool Edges Depending on the Cutting Angle and Cutting Speed When Milling Cfrp","status":"public","author":[{"first_name":"Robin","last_name":"Clemens","full_name":"Clemens, Robin"},{"first_name":"Enrico","last_name":"Barth","full_name":"Barth, Enrico"},{"last_name":"Uhlmann","first_name":"Eckart","full_name":"Uhlmann, Eckart"},{"full_name":"Zhan, Yingjie","last_name":"Zhan","first_name":"Yingjie"},{"id":"75","first_name":"Ismail","last_name":"Caylak","full_name":"Caylak, Ismail"},{"id":"335","full_name":"Mahnken, Rolf","first_name":"Rolf","last_name":"Mahnken"}],"publication_identifier":{"issn":["1556-5068"]},"date_updated":"2023-04-27T10:08:09Z","publication_status":"published","_id":"41485","publisher":"Elsevier BV","language":[{"iso":"eng"}],"doi":"10.2139/ssrn.4259246","user_id":"335"},{"editor":[{"full_name":"Ekinci, Yüksel","last_name":"Ekinci","first_name":"Yüksel"},{"full_name":"Hoffmann, Ludger","last_name":"Hoffmann","first_name":"Ludger"}],"user_id":"82970","_id":"43486","publisher":"Iudicium","page":"238-261","status":"public","place":"München","quality_controlled":"1","citation":{"apa":"Günesli, H. (2022). Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund. In Y. Ekinci &#38; L. Hoffmann (Eds.), <i>Mehrsprachigkeit und -kulturaltiät im Konflikt</i> (pp. 238–261). Iudicium.","ieee":"H. Günesli, “Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund,” in <i>Mehrsprachigkeit und -kulturaltiät im Konflikt</i>, Y. Ekinci and L. Hoffmann, Eds. München: Iudicium, 2022, pp. 238–261.","short":"H. Günesli, in: Y. Ekinci, L. Hoffmann (Eds.), Mehrsprachigkeit und -kulturaltiät im Konflikt, Iudicium, München, 2022, pp. 238–261.","chicago":"Günesli, Habib. “Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund.” In <i>Mehrsprachigkeit und -kulturaltiät im Konflikt</i>, edited by Yüksel Ekinci and Ludger Hoffmann, 238–61. München: Iudicium, 2022.","mla":"Günesli, Habib. “Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund.” <i>Mehrsprachigkeit und -kulturaltiät im Konflikt</i>, edited by Yüksel Ekinci and Ludger Hoffmann, Iudicium, 2022, pp. 238–61.","ama":"Günesli H. Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund. In: Ekinci Y, Hoffmann L, eds. <i>Mehrsprachigkeit und -kulturaltiät im Konflikt</i>. Iudicium; 2022:238-261.","bibtex":"@inbook{Günesli_2022, place={München}, title={Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund}, booktitle={Mehrsprachigkeit und -kulturaltiät im Konflikt}, publisher={Iudicium}, author={Günesli, Habib}, editor={Ekinci, Yüksel and Hoffmann, Ludger}, year={2022}, pages={238–261} }"},"language":[{"iso":"ger"}],"date_updated":"2023-04-18T12:48:04Z","publication_status":"published","publication_identifier":{"isbn":["978-3-86205-552-4"]},"author":[{"id":"82970","full_name":"Günesli, Habib","first_name":"Habib","last_name":"Günesli"}],"title":"Sprache(n) im kindilchen Aneignungsprozess von (Medien-)Welt. Zur Relevanz der lebensweltlichen Mehrsprachigkeit von Kindergartenkindern aus Einwandererfamilien und mit einem deutsch-türkischen Hintergrund","year":"2022","type":"book_chapter","keyword":["Mehrsprachigkeit","Mehrkulturalität","Migration","Mediensozialisation","Migration","Frühe Bildung"],"date_created":"2023-04-14T00:45:45Z","abstract":[{"lang":"ger","text":"Dieser Beitrag basiert auf den Ergebnissen eines im Jahr 2019 abgeschlossenen Promotionsvorhabens im Rahmen des interventiv angelegten, in Dortmund angesiedelten, Forschungsprojekts KidSmart – Medienkompetent zum Schulübergang zu den Mediensozialisationserfahrungen von deutschen, deutsch-türkischen und deutsch-anderen vier und fünf Jahre alten Mädchen und Jungen in den sozialen Feldern Familie und KiTa. Im vorliegenden Beitrag werden die Angaben der Eltern, die mittels halbstandardisierter Fragebögen, und die Aussagen ihrer Kinder, die anhand der Puppet-Interview-Methode gewonnen werden konnten, fokussiert. Vor dem Hintergrund einer globalen und damit zunehmend (sozio-kulturell und sprachlich) pluralen und mediatisierten Welt wird gefragt, inwieweit und wie Kindern in ihrem Aneignungsprozess von (Medien-)Welt die Relevanz ihrer migrationsbedingten Mehrkulturalität und Mehrsprachigkeit vermittelt wird? Es stellte sich heraus, dass migrantisch mehrsprachige und im Besonderen deutsch-türkische Kinder zunächst und hauptsächlich ein- und deutschsprachige Mediennutzer*innen sind, weshalb sie, so ist zu vermuten, auch\r\neine primär ein- und deutschsprachige Aneignung von (Medien-)Welt erfahren werden – insbesondere dann, wenn für sie die Relevanz ihrer Herkunfts- und Erstsprachen nicht ersichtlich ist. Ausgehend von diesen Ergebnissen wird im Rahmen dieses Beitrags perspektivisch nach der Bedeutung und Relevanz der Medienpädagogik zur Förderung der migrationsbedingten Mehrsprachigkeit gefragt und der Blick konkret auf die mehrkulturelle Mediensozialisationsforschung gerichtet, die diese Ausprägung der Mehrsprachigkeit zu ihrem zentralen Forschungsgegenstand machen sollte."}],"publication":"Mehrsprachigkeit und -kulturaltiät im Konflikt"},{"article_type":"original","intvolume":"         5","publication_status":"published","date_updated":"2023-04-20T14:01:16Z","publication_identifier":{"eissn":["2515-7639"]},"author":[{"id":"23261","full_name":"Neufeld, Sergej","last_name":"Neufeld","first_name":"Sergej"},{"full_name":"Schindlmayr, Arno","last_name":"Schindlmayr","first_name":"Arno","orcid":"0000-0002-4855-071X","id":"458"},{"full_name":"Schmidt, Wolf Gero","last_name":"Schmidt","first_name":"Wolf Gero","orcid":"0000-0002-2717-5076","id":"468"}],"year":"2022","title":"Quasiparticle energies and optical response of RbTiOPO4 and KTiOAsO4","doi":"10.1088/2515-7639/ac3384","language":[{"iso":"eng"}],"article_number":"015002","abstract":[{"lang":"eng","text":"Many-body perturbation theory based on density-functional theory calculations is used to determine the quasiparticle band structures and the dielectric functions of the isomorphic ferroelectrics rubidium titanyl phosphate (RbTiOPO4) and potassium titanyl arsenide (KTiOAsO4). Self-energy corrections of more than 2 eV are found to widen the transport band gaps of both materials considerably to 5.3 and 5.2 eV, respectively. At the same time, both materials are characterized by strong exciton binding energies of 1.4 and 1.5 eV, respectively. The solution of the Bethe-Salpeter equation based on the quasiparticle energies results in onsets of the optical absorption within the range of the measured data."}],"publication":"Journal of Physics: Materials","issue":"1","department":[{"_id":"296"},{"_id":"295"},{"_id":"230"},{"_id":"429"},{"_id":"15"},{"_id":"170"},{"_id":"35"}],"type":"journal_article","date_created":"2021-10-20T13:00:04Z","file":[{"description":"Creative Commons Attribution 4.0 International Public License (CC BY 4.0)","date_created":"2021-11-22T17:57:00Z","creator":"schindlm","title":"Quasiparticle energies and optical response of RbTiOPO4 and KTiOAsO4","file_id":"27705","content_type":"application/pdf","relation":"main_file","date_updated":"2021-11-22T17:57:00Z","file_name":"Neufeld_2022_J._Phys._Mater._5_015002.pdf","access_level":"open_access","file_size":2687065}],"has_accepted_license":"1","status":"public","volume":5,"user_id":"16199","ddc":["530"],"publisher":"IOP Publishing","_id":"26627","funded_apc":"1","project":[{"name":"TRR 142","_id":"53"},{"_id":"55","name":"TRR 142 - Project Area B"},{"_id":"69","name":"TRR 142 - Subproject B4"},{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"},{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"},{"name":"TRR 142 - B07: TRR 142 - Subproject B07","_id":"168"}],"quality_controlled":"1","isi":"1","citation":{"apa":"Neufeld, S., Schindlmayr, A., &#38; Schmidt, W. G. (2022). Quasiparticle energies and optical response of RbTiOPO4 and KTiOAsO4. <i>Journal of Physics: Materials</i>, <i>5</i>(1), Article 015002. <a href=\"https://doi.org/10.1088/2515-7639/ac3384\">https://doi.org/10.1088/2515-7639/ac3384</a>","ieee":"S. Neufeld, A. Schindlmayr, and W. G. Schmidt, “Quasiparticle energies and optical response of RbTiOPO4 and KTiOAsO4,” <i>Journal of Physics: Materials</i>, vol. 5, no. 1, Art. no. 015002, 2022, doi: <a href=\"https://doi.org/10.1088/2515-7639/ac3384\">10.1088/2515-7639/ac3384</a>.","short":"S. Neufeld, A. Schindlmayr, W.G. Schmidt, Journal of Physics: Materials 5 (2022).","chicago":"Neufeld, Sergej, Arno Schindlmayr, and Wolf Gero Schmidt. “Quasiparticle Energies and Optical Response of RbTiOPO4 and KTiOAsO4.” <i>Journal of Physics: Materials</i> 5, no. 1 (2022). <a href=\"https://doi.org/10.1088/2515-7639/ac3384\">https://doi.org/10.1088/2515-7639/ac3384</a>.","mla":"Neufeld, Sergej, et al. “Quasiparticle Energies and Optical Response of RbTiOPO4 and KTiOAsO4.” <i>Journal of Physics: Materials</i>, vol. 5, no. 1, 015002, IOP Publishing, 2022, doi:<a href=\"https://doi.org/10.1088/2515-7639/ac3384\">10.1088/2515-7639/ac3384</a>.","ama":"Neufeld S, Schindlmayr A, Schmidt WG. Quasiparticle energies and optical response of RbTiOPO4 and KTiOAsO4. <i>Journal of Physics: Materials</i>. 2022;5(1). doi:<a href=\"https://doi.org/10.1088/2515-7639/ac3384\">10.1088/2515-7639/ac3384</a>","bibtex":"@article{Neufeld_Schindlmayr_Schmidt_2022, title={Quasiparticle energies and optical response of RbTiOPO4 and KTiOAsO4}, volume={5}, DOI={<a href=\"https://doi.org/10.1088/2515-7639/ac3384\">10.1088/2515-7639/ac3384</a>}, number={1015002}, journal={Journal of Physics: Materials}, publisher={IOP Publishing}, author={Neufeld, Sergej and Schindlmayr, Arno and Schmidt, Wolf Gero}, year={2022} }"},"file_date_updated":"2021-11-22T17:57:00Z","oa":"1","external_id":{"isi":["000721060500001"]}},{"quality_controlled":"1","citation":{"ama":"Schindlmayr A. Programmierung und Computersimulationen. In: Gerick J, Sommer A, Zimmermann G, eds. <i>Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre</i>. 2nd ed. Waxmann; 2022:270-274. doi:<a href=\"https://doi.org/10.36198/9783838558592\">10.36198/9783838558592</a>","bibtex":"@inbook{Schindlmayr_2022, place={Münster}, edition={2}, title={Programmierung und Computersimulationen}, DOI={<a href=\"https://doi.org/10.36198/9783838558592\">10.36198/9783838558592</a>}, booktitle={Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre}, publisher={Waxmann}, author={Schindlmayr, Arno}, editor={Gerick, Julia and Sommer, Angela and Zimmermann, Germo}, year={2022}, pages={270–274} }","mla":"Schindlmayr, Arno. “Programmierung und Computersimulationen.” <i>Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre</i>, edited by Julia Gerick et al., 2nd ed., Waxmann, 2022, pp. 270–74, doi:<a href=\"https://doi.org/10.36198/9783838558592\">10.36198/9783838558592</a>.","chicago":"Schindlmayr, Arno. “Programmierung und Computersimulationen.” In <i>Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre</i>, edited by Julia Gerick, Angela Sommer, and Germo Zimmermann, 2nd ed., 270–74. Münster: Waxmann, 2022. <a href=\"https://doi.org/10.36198/9783838558592\">https://doi.org/10.36198/9783838558592</a>.","short":"A. Schindlmayr, in: J. Gerick, A. Sommer, G. Zimmermann (Eds.), Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre, 2nd ed., Waxmann, Münster, 2022, pp. 270–274.","apa":"Schindlmayr, A. (2022). Programmierung und Computersimulationen. In J. Gerick, A. Sommer, &#38; G. Zimmermann (Eds.), <i>Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre</i> (2nd ed., pp. 270–274). Waxmann. <a href=\"https://doi.org/10.36198/9783838558592\">https://doi.org/10.36198/9783838558592</a>","ieee":"A. Schindlmayr, “Programmierung und Computersimulationen,” in <i>Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre</i>, 2nd ed., J. Gerick, A. Sommer, and G. Zimmermann, Eds. Münster: Waxmann, 2022, pp. 270–274."},"place":"Münster","status":"public","editor":[{"full_name":"Gerick, Julia","first_name":"Julia","last_name":"Gerick"},{"first_name":"Angela","last_name":"Sommer","full_name":"Sommer, Angela"},{"full_name":"Zimmermann, Germo","last_name":"Zimmermann","first_name":"Germo"}],"user_id":"16199","publisher":"Waxmann","_id":"29808","edition":"2","page":"270-274","abstract":[{"text":"Dieses Format eignet sich, um zu prüfen, inwieweit Studierende Computersimulationen und eigene kleine Programme zur Lösung typischer Probleme ihres Fachs nutzen können. Wie bei Klausuren erfolgt die Bearbeitung in begrenzter Zeit und unter Aufsicht, wird aber am Computer durchgeführt und beinhaltet neben der Programmierung auch vor- und nachbereitende Aufgaben im Kontext der fachlichen Anwendung.","lang":"ger"}],"publication":"Kompetent Prüfungen gestalten: 60 Prüfungsformate für die Hochschullehre","department":[{"_id":"296"},{"_id":"170"},{"_id":"15"},{"_id":"35"}],"type":"book_chapter","date_created":"2022-02-11T11:13:37Z","date_updated":"2023-04-20T14:55:58Z","publication_status":"published","publication_identifier":{"isbn":["9783825258597"],"eisbn":["9783838558592"]},"author":[{"first_name":"Arno","last_name":"Schindlmayr","orcid":"0000-0002-4855-071X","full_name":"Schindlmayr, Arno","id":"458"}],"year":"2022","title":"Programmierung und Computersimulationen","doi":"10.36198/9783838558592","language":[{"iso":"ger"}]},{"department":[{"_id":"151"},{"_id":"655"}],"type":"book_chapter","place":"Cham","date_created":"2022-02-03T10:30:23Z","quality_controlled":"1","citation":{"apa":"Wohlleben, M. C., Bender, A., Peitz, S., &#38; Sextro, W. (2022). Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction. In <i>Machine Learning, Optimization, and Data Science</i>. Springer International Publishing. <a href=\"https://doi.org/10.1007/978-3-030-95470-3_8\">https://doi.org/10.1007/978-3-030-95470-3_8</a>","ieee":"M. C. Wohlleben, A. Bender, S. Peitz, and W. Sextro, “Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction,” in <i>Machine Learning, Optimization, and Data Science</i>, Cham: Springer International Publishing, 2022.","chicago":"Wohlleben, Meike Claudia, Amelie Bender, Sebastian Peitz, and Walter Sextro. “Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction.” In <i>Machine Learning, Optimization, and Data Science</i>. Cham: Springer International Publishing, 2022. <a href=\"https://doi.org/10.1007/978-3-030-95470-3_8\">https://doi.org/10.1007/978-3-030-95470-3_8</a>.","short":"M.C. Wohlleben, A. Bender, S. Peitz, W. Sextro, in: Machine Learning, Optimization, and Data Science, Springer International Publishing, Cham, 2022.","mla":"Wohlleben, Meike Claudia, et al. “Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction.” <i>Machine Learning, Optimization, and Data Science</i>, Springer International Publishing, 2022, doi:<a href=\"https://doi.org/10.1007/978-3-030-95470-3_8\">10.1007/978-3-030-95470-3_8</a>.","ama":"Wohlleben MC, Bender A, Peitz S, Sextro W. Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction. In: <i>Machine Learning, Optimization, and Data Science</i>. Springer International Publishing; 2022. doi:<a href=\"https://doi.org/10.1007/978-3-030-95470-3_8\">10.1007/978-3-030-95470-3_8</a>","bibtex":"@inbook{Wohlleben_Bender_Peitz_Sextro_2022, place={Cham}, title={Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction}, DOI={<a href=\"https://doi.org/10.1007/978-3-030-95470-3_8\">10.1007/978-3-030-95470-3_8</a>}, booktitle={Machine Learning, Optimization, and Data Science}, publisher={Springer International Publishing}, author={Wohlleben, Meike Claudia and Bender, Amelie and Peitz, Sebastian and Sextro, Walter}, year={2022} }"},"publication":"Machine Learning, Optimization, and Data Science","doi":"10.1007/978-3-030-95470-3_8","user_id":"43991","publisher":"Springer International Publishing","_id":"29727","language":[{"iso":"eng"}],"main_file_link":[{"url":"https://link.springer.com/content/pdf/10.1007%2F978-3-030-95470-3_8.pdf"}],"date_updated":"2023-04-26T12:10:58Z","publication_status":"published","author":[{"first_name":"Meike Claudia","last_name":"Wohlleben","full_name":"Wohlleben, Meike Claudia","id":"43991"},{"last_name":"Bender","first_name":"Amelie","full_name":"Bender, Amelie","id":"54290"},{"id":"47427","last_name":"Peitz","first_name":"Sebastian","orcid":"0000-0002-3389-793X","full_name":"Peitz, Sebastian"},{"full_name":"Sextro, Walter","last_name":"Sextro","first_name":"Walter","id":"21220"}],"publication_identifier":{"issn":["0302-9743","1611-3349"],"isbn":["9783030954697","9783030954703"]},"status":"public","year":"2022","title":"Development of a Hybrid Modeling Methodology for Oscillating Systems with Friction"},{"publication":"Journal of Composites Science","issue":"10","abstract":[{"lang":"eng","text":"<jats:p>Wood–plastic composites (WPC) are enjoying a steady increase in popularity. In addition to the extrusion of decking boards, the material is also used increasingly in injection molding. Depending on the formulation, geometry and process parameters, WPC tends to exhibit irregular filling behavior, similar to the processing of thermosets. In this work, the influence of matrix material and wood fiber content on the flow, mold filling and segregation behavior of WPC is analyzed. For this purpose, investigations were carried out on a flow spiral and a sheet cavity. WPC based on thermoplastic polyurethane (TPU) achieves significantly higher flow path lengths at a wood mass content of 30% than polypropylene (PP)-based WPC. The opposite behavior occurs at higher wood contents due to the different shear thinning behavior. Slightly decreased wood contents could be observed at the beginning of the flow path and greatly increased wood contents at the end of the flow path, compared to the starting material. When using the plate cavity, flow anomalies in the form of free jets occur as a function of the wood content, with TPU exhibiting the more critical behavior. The flow front is frayed, but in contrast to the flow spiral, no significant wood accumulation could be detected due to the shorter flow path lengths.</jats:p>"}],"date_created":"2022-10-21T05:57:03Z","department":[{"_id":"321"},{"_id":"9"},{"_id":"367"},{"_id":"147"}],"keyword":["Engineering (miscellaneous)","Ceramics and Composites"],"type":"journal_article","publication_identifier":{"issn":["2504-477X"]},"author":[{"id":"20531","full_name":"Moritzer, Elmar","first_name":"Elmar","last_name":"Moritzer"},{"full_name":"Flachmann, Felix","last_name":"Flachmann","orcid":"0000-0002-7651-7028","first_name":"Felix","id":"38212"},{"full_name":"Richters, Maximilian","last_name":"Richters","first_name":"Maximilian","id":"38221"},{"full_name":"Neugebauer, Marcel","last_name":"Neugebauer","first_name":"Marcel"}],"year":"2022","title":"Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics","intvolume":"         6","date_updated":"2023-04-26T13:40:41Z","publication_status":"published","language":[{"iso":"eng"}],"main_file_link":[{"open_access":"1"}],"article_number":"321","doi":"10.3390/jcs6100321","citation":{"ama":"Moritzer E, Flachmann F, Richters M, Neugebauer M. Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics. <i>Journal of Composites Science</i>. 2022;6(10). doi:<a href=\"https://doi.org/10.3390/jcs6100321\">10.3390/jcs6100321</a>","bibtex":"@article{Moritzer_Flachmann_Richters_Neugebauer_2022, title={Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics}, volume={6}, DOI={<a href=\"https://doi.org/10.3390/jcs6100321\">10.3390/jcs6100321</a>}, number={10321}, journal={Journal of Composites Science}, publisher={MDPI AG}, author={Moritzer, Elmar and Flachmann, Felix and Richters, Maximilian and Neugebauer, Marcel}, year={2022} }","mla":"Moritzer, Elmar, et al. “Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics.” <i>Journal of Composites Science</i>, vol. 6, no. 10, 321, MDPI AG, 2022, doi:<a href=\"https://doi.org/10.3390/jcs6100321\">10.3390/jcs6100321</a>.","short":"E. Moritzer, F. Flachmann, M. Richters, M. Neugebauer, Journal of Composites Science 6 (2022).","chicago":"Moritzer, Elmar, Felix Flachmann, Maximilian Richters, and Marcel Neugebauer. “Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics.” <i>Journal of Composites Science</i> 6, no. 10 (2022). <a href=\"https://doi.org/10.3390/jcs6100321\">https://doi.org/10.3390/jcs6100321</a>.","apa":"Moritzer, E., Flachmann, F., Richters, M., &#38; Neugebauer, M. (2022). Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics. <i>Journal of Composites Science</i>, <i>6</i>(10), Article 321. <a href=\"https://doi.org/10.3390/jcs6100321\">https://doi.org/10.3390/jcs6100321</a>","ieee":"E. Moritzer, F. Flachmann, M. Richters, and M. Neugebauer, “Analysis of the Segregation Phenomena of Wood Fiber Reinforced Plastics,” <i>Journal of Composites Science</i>, vol. 6, no. 10, Art. no. 321, 2022, doi: <a href=\"https://doi.org/10.3390/jcs6100321\">10.3390/jcs6100321</a>."},"quality_controlled":"1","oa":"1","status":"public","publisher":"MDPI AG","_id":"33856","volume":6,"user_id":"38212"},{"_id":"33477","publisher":"Elsevier","language":[{"iso":"eng"}],"ddc":["000"],"user_id":"22006","author":[{"full_name":"Bothe, Mike","last_name":"Bothe","first_name":"Mike","id":"72973"},{"first_name":"Iman","last_name":"Hami Dindar","full_name":"Hami Dindar, Iman","id":"54836"},{"id":"22006","last_name":"Lutters","first_name":"Nicole","full_name":"Lutters, Nicole"},{"first_name":"Eugeny Y.","last_name":"Kenig","full_name":"Kenig, Eugeny Y.","id":"665"}],"status":"public","title":"Dynamic modeling of absorption/desorption closed-loop including periphery","year":"2022","has_accepted_license":"1","date_updated":"2023-04-26T13:50:38Z","date_created":"2022-09-23T09:12:14Z","file":[{"file_id":"33478","content_type":"application/pdf","file_name":"Dynamic modeling of absorption desorption closed loop including periphery.pdf","access_level":"open_access","file_size":5424798,"relation":"main_file","date_updated":"2022-09-23T09:12:06Z","date_created":"2022-09-23T09:12:06Z","creator":"bothem"}],"oa":"1","department":[{"_id":"9"},{"_id":"145"}],"type":"journal_article","citation":{"mla":"Bothe, Mike, et al. “Dynamic Modeling of Absorption/Desorption Closed-Loop Including Periphery.” <i>Computers and Chemical Engineering</i>, Elsevier, 2022.","ama":"Bothe M, Hami Dindar I, Lutters N, Kenig EY. Dynamic modeling of absorption/desorption closed-loop including periphery. <i>Computers and Chemical Engineering</i>. Published online 2022.","bibtex":"@article{Bothe_Hami Dindar_Lutters_Kenig_2022, title={Dynamic modeling of absorption/desorption closed-loop including periphery}, journal={Computers and Chemical Engineering}, publisher={Elsevier}, author={Bothe, Mike and Hami Dindar, Iman and Lutters, Nicole and Kenig, Eugeny Y.}, year={2022} }","apa":"Bothe, M., Hami Dindar, I., Lutters, N., &#38; Kenig, E. Y. (2022). Dynamic modeling of absorption/desorption closed-loop including periphery. <i>Computers and Chemical Engineering</i>.","ieee":"M. Bothe, I. Hami Dindar, N. Lutters, and E. Y. Kenig, “Dynamic modeling of absorption/desorption closed-loop including periphery,” <i>Computers and Chemical Engineering</i>, 2022.","chicago":"Bothe, Mike, Iman Hami Dindar, Nicole Lutters, and Eugeny Y. Kenig. “Dynamic Modeling of Absorption/Desorption Closed-Loop Including Periphery.” <i>Computers and Chemical Engineering</i>, 2022.","short":"M. Bothe, I. Hami Dindar, N. Lutters, E.Y. Kenig, Computers and Chemical Engineering (2022)."},"publication":"Computers and Chemical Engineering","file_date_updated":"2022-09-23T09:12:06Z","quality_controlled":"1"},{"date_created":"2022-12-06T13:50:06Z","type":"journal_article","keyword":["Industrial and Manufacturing Engineering","Mechanical Engineering"],"department":[{"_id":"157"},{"_id":"630"}],"publication":"Production Engineering","abstract":[{"lang":"eng","text":"Due to the increasing use of multi-material constructions and the resulting material incompatibilities, mechanical joining technologies are gaining in importance. The reasons for this are the variety of joining possibilities as well as high load-bearing capacities. However, the currently rigid tooling systems cannot react to changing boundary conditions, such as changed sheet thicknesses or strength. For this reason, a large number of specialised joining processes have been developed to expand the range of applications. Using a versatile self-piercing riveting process, multi-material structures are joined in this paper. In this process, a modified tool actuator technology is combined with multi-range capable auxiliary joining parts. The multi-range capability of the rivets is achieved by forming the rivet head onto the respective thickness of the joining part combination without creating a tooling set-up effort. The joints are investigated both experimentally on the basis of joint formation and load-bearing capacity tests as well as by means of numerical simulation. It turned out that all the joints examined could be manufactured according to the defined standards. The load-bearing capacities of the joints are comparable to those of conventionally joined joints. In some cases the joint fails prematurely, which is why lower energy absorptions are obtained. However, the maximum forces achieved are higher than those of conventional joints. Especially in the case of high-strength materials arranged on the die side, the interlock formation is low. In addition, the use of die-sided sheets requires a large deformation of the rivet head protrusion, which leads to an increase in stress and, as a result, to damage if the rivet head. However, a negative influence on the joint load-bearing capacity could be excluded.</jats:p>"}],"language":[{"iso":"eng"}],"doi":"10.1007/s11740-022-01151-w","year":"2022","title":"Joining of multi-material structures using a versatile self-piercing riveting process","author":[{"full_name":"Kappe, Fabian","last_name":"Kappe","first_name":"Fabian","id":"66459"},{"full_name":"Wituschek, Simon","first_name":"Simon","last_name":"Wituschek"},{"id":"7850","last_name":"Bobbert","first_name":"Mathias","full_name":"Bobbert, Mathias"},{"full_name":"Lechner, Michael","last_name":"Lechner","first_name":"Michael"},{"id":"32056","orcid":"0000-0002-2763-1246","last_name":"Meschut","first_name":"Gerson","full_name":"Meschut, Gerson"}],"publication_identifier":{"issn":["0944-6524","1863-7353"]},"publication_status":"published","date_updated":"2023-04-27T07:53:58Z","citation":{"mla":"Kappe, Fabian, et al. “Joining of Multi-Material Structures Using a Versatile Self-Piercing Riveting Process.” <i>Production Engineering</i>, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1007/s11740-022-01151-w\">10.1007/s11740-022-01151-w</a>.","ama":"Kappe F, Wituschek S, Bobbert M, Lechner M, Meschut G. Joining of multi-material structures using a versatile self-piercing riveting process. <i>Production Engineering</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1007/s11740-022-01151-w\">10.1007/s11740-022-01151-w</a>","bibtex":"@article{Kappe_Wituschek_Bobbert_Lechner_Meschut_2022, title={Joining of multi-material structures using a versatile self-piercing riveting process}, DOI={<a href=\"https://doi.org/10.1007/s11740-022-01151-w\">10.1007/s11740-022-01151-w</a>}, journal={Production Engineering}, publisher={Springer Science and Business Media LLC}, author={Kappe, Fabian and Wituschek, Simon and Bobbert, Mathias and Lechner, Michael and Meschut, Gerson}, year={2022} }","apa":"Kappe, F., Wituschek, S., Bobbert, M., Lechner, M., &#38; Meschut, G. (2022). Joining of multi-material structures using a versatile self-piercing riveting process. <i>Production Engineering</i>. <a href=\"https://doi.org/10.1007/s11740-022-01151-w\">https://doi.org/10.1007/s11740-022-01151-w</a>","ieee":"F. Kappe, S. Wituschek, M. Bobbert, M. Lechner, and G. Meschut, “Joining of multi-material structures using a versatile self-piercing riveting process,” <i>Production Engineering</i>, 2022, doi: <a href=\"https://doi.org/10.1007/s11740-022-01151-w\">10.1007/s11740-022-01151-w</a>.","short":"F. Kappe, S. Wituschek, M. Bobbert, M. Lechner, G. Meschut, Production Engineering (2022).","chicago":"Kappe, Fabian, Simon Wituschek, Mathias Bobbert, Michael Lechner, and Gerson Meschut. “Joining of Multi-Material Structures Using a Versatile Self-Piercing Riveting Process.” <i>Production Engineering</i>, 2022. <a href=\"https://doi.org/10.1007/s11740-022-01151-w\">https://doi.org/10.1007/s11740-022-01151-w</a>."},"quality_controlled":"1","project":[{"name":"TRR 285: TRR 285","grant_number":"418701707","_id":"130"},{"name":"TRR 285 - C: TRR 285 - Project Area C","_id":"133"},{"_id":"146","name":"TRR 285 – C02: TRR 285 - Subproject C02"}],"_id":"34241","publisher":"Springer Science and Business Media LLC","user_id":"7850","status":"public"},{"date_created":"2022-02-25T07:19:45Z","keyword":["Industrial and Manufacturing Engineering","Mechanical Engineering"],"type":"journal_article","department":[{"_id":"157"}],"publication":"Production Engineering","abstract":[{"text":"Since the application of mechanical joining methods, such as clinching or riveting, offers a robust solution for the generation of advanced multi-material connections, the use in the field of lightweight designs (e.g. automotive industry) is steadily increasing. Therefore, not only the design of an individual joint is required but also the dimensioning of the entire joining connection is crucial. However, in comparison to thermal joining techniques, such as spot welding, the evaluation of the joints’ resistance against defined requirements (e.g. types of load, minimal amount of load cycles) mainly relies on the consideration of expert knowledge, a few design principles and a small amount of experimental data. Since this generally implies the involvement of several domains, such as the material characterization or the part design, a tremendous amount of data and knowledge is separately generated for a certain dimensioning process. Nevertheless, the lack of formalization and standardization in representing the gained knowledge leads to a difficult and inconsistent reuse, sharing or searching of already existing information. Thus, this contribution presents a specific ontology for the provision of cross-domain knowledge about mechanical joining processes and highlights two potential use cases of this ontology in the design of clinched and pin joints.</jats:p>","lang":"eng"}],"language":[{"iso":"eng"}],"doi":"10.1007/s11740-022-01117-y","year":"2022","title":"Provision of cross-domain knowledge in mechanical joining using ontologies","publication_identifier":{"issn":["0944-6524","1863-7353"]},"author":[{"full_name":"Zirngibl, Christoph","last_name":"Zirngibl","first_name":"Christoph"},{"last_name":"Kügler","first_name":"Patricia","full_name":"Kügler, Patricia"},{"full_name":"Popp, Julian","last_name":"Popp","first_name":"Julian"},{"id":"34782","full_name":"Bielak, Christian Roman","first_name":"Christian Roman","last_name":"Bielak"},{"full_name":"Bobbert, Mathias","first_name":"Mathias","last_name":"Bobbert","id":"7850"},{"full_name":"Drummer, Dietmar","first_name":"Dietmar","last_name":"Drummer"},{"id":"32056","first_name":"Gerson","last_name":"Meschut","orcid":"0000-0002-2763-1246","full_name":"Meschut, Gerson"},{"full_name":"Wartzack, Sandro","first_name":"Sandro","last_name":"Wartzack"},{"full_name":"Schleich, Benjamin","first_name":"Benjamin","last_name":"Schleich"}],"date_updated":"2023-04-27T07:42:19Z","publication_status":"published","citation":{"bibtex":"@article{Zirngibl_Kügler_Popp_Bielak_Bobbert_Drummer_Meschut_Wartzack_Schleich_2022, title={Provision of cross-domain knowledge in mechanical joining using ontologies}, DOI={<a href=\"https://doi.org/10.1007/s11740-022-01117-y\">10.1007/s11740-022-01117-y</a>}, journal={Production Engineering}, publisher={Springer Science and Business Media LLC}, author={Zirngibl, Christoph and Kügler, Patricia and Popp, Julian and Bielak, Christian Roman and Bobbert, Mathias and Drummer, Dietmar and Meschut, Gerson and Wartzack, Sandro and Schleich, Benjamin}, year={2022} }","ama":"Zirngibl C, Kügler P, Popp J, et al. Provision of cross-domain knowledge in mechanical joining using ontologies. <i>Production Engineering</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1007/s11740-022-01117-y\">10.1007/s11740-022-01117-y</a>","mla":"Zirngibl, Christoph, et al. “Provision of Cross-Domain Knowledge in Mechanical Joining Using Ontologies.” <i>Production Engineering</i>, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1007/s11740-022-01117-y\">10.1007/s11740-022-01117-y</a>.","short":"C. Zirngibl, P. Kügler, J. Popp, C.R. Bielak, M. Bobbert, D. Drummer, G. Meschut, S. Wartzack, B. Schleich, Production Engineering (2022).","chicago":"Zirngibl, Christoph, Patricia Kügler, Julian Popp, Christian Roman Bielak, Mathias Bobbert, Dietmar Drummer, Gerson Meschut, Sandro Wartzack, and Benjamin Schleich. “Provision of Cross-Domain Knowledge in Mechanical Joining Using Ontologies.” <i>Production Engineering</i>, 2022. <a href=\"https://doi.org/10.1007/s11740-022-01117-y\">https://doi.org/10.1007/s11740-022-01117-y</a>.","ieee":"C. Zirngibl <i>et al.</i>, “Provision of cross-domain knowledge in mechanical joining using ontologies,” <i>Production Engineering</i>, 2022, doi: <a href=\"https://doi.org/10.1007/s11740-022-01117-y\">10.1007/s11740-022-01117-y</a>.","apa":"Zirngibl, C., Kügler, P., Popp, J., Bielak, C. R., Bobbert, M., Drummer, D., Meschut, G., Wartzack, S., &#38; Schleich, B. (2022). Provision of cross-domain knowledge in mechanical joining using ontologies. <i>Production Engineering</i>. <a href=\"https://doi.org/10.1007/s11740-022-01117-y\">https://doi.org/10.1007/s11740-022-01117-y</a>"},"quality_controlled":"1","project":[{"name":"TRR 285: TRR 285","grant_number":"418701707","_id":"130"},{"name":"TRR 285 - B: TRR 285 - Project Area B","_id":"132"},{"name":"TRR 285 – B05: TRR 285 - Subproject B05","_id":"144"},{"_id":"133","name":"TRR 285 - C: TRR 285 - Project Area C"},{"name":"TRR 285 – C01: TRR 285 - Subproject C01","_id":"145"},{"name":"TRR 285 - A: TRR 285 - Project Area A","_id":"131"},{"name":"TRR 285 – A01: TRR 285 - Subproject A01","_id":"135"}],"_id":"30100","publisher":"Springer Science and Business Media LLC","user_id":"7850","status":"public"}]
